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PacBio SMRT- 和 Illumina RNA-seq 整合分析揭示了小菜蛾中参与噻虫嗪解毒的 P450 基因。

Integration analysis of PacBio SMRT- and Illumina RNA-seq reveals P450 genes involved in thiamethoxam detoxification in Bradysia odoriphaga.

机构信息

Huaiyin Institute of Agricultural Sciences of Xuhuai Region in Jiangsu, Jiangsu Academy of Agricultural Sciences, Huai'an, Jiangsu Province 223001, China; Department of Entomology, College of Plant Protection, China Agricultural University, Beijing 100193, China.

Department of Entomology, College of Plant Protection, China Agricultural University, Beijing 100193, China.

出版信息

Pestic Biochem Physiol. 2022 Aug;186:105176. doi: 10.1016/j.pestbp.2022.105176. Epub 2022 Jul 13.

Abstract

The sciarid fly Bradysia odoriphaga is a serious pest of Chinese chive (Liliaceae). Neonicotinoid insecticides including thiamethoxam have been used for B. odoriphaga control. However, thiamethoxam resistance in B. odoriphaga has developed in recent years. To identify potential genes involved in detoxification metabolism of thiamethoxam in B. odoriphaga, a PacBio single-molecule real-time (SMRT) transcriptome sequencing and Illumina RNA-seq analysis on thiamethoxam treated B. odoriphaga were performed to explore differentially expressed genes in B. odoriphaga. After SMRT sequencing, analysis of Illumina RNA-Seq data showed a total of 172 differentially expressed genes (DEGs) after thiamethoxam treatment, among which eight upregulated DEGs were P450 genes that may be related to thiamethoxam metabolism. The qRT-PCR results of the eight up-regulated P450 unigenes after thiamethoxam treatment were consistent with RNA-Seq data. Furthermore, oral delivery mediated RNA interference of the eight upregulated P450 transcripts followed by insecticide bioassay was conducted, and three P450 unigenes were verified to be related to thiamethoxam detoxification in B. odoriphaga. This study provides new information about the P450 genes involved in thiamethoxam detoxification in B. odoriphaga.

摘要

球孢白僵菌是一种严重危害中国韭菜(百合科)的鳞翅目害虫。噻虫嗪等新烟碱类杀虫剂已被用于防治 B. odoriphaga。然而,近年来 B. odoriphaga 对噻虫嗪产生了抗药性。为了鉴定 B. odoriphaga 中噻虫嗪解毒代谢相关的潜在基因,对噻虫嗪处理的 B. odoriphaga 进行了 PacBio 单分子实时(SMRT)转录组测序和 Illumina RNA-seq 分析,以探索 B. odoriphaga 中的差异表达基因。SMRT 测序后,Illumina RNA-Seq 数据分析显示,噻虫嗪处理后共有 172 个差异表达基因(DEGs),其中 8 个上调的 DEGs 是 P450 基因,可能与噻虫嗪代谢有关。噻虫嗪处理后 8 个上调的 P450 基因的 qRT-PCR 结果与 RNA-Seq 数据一致。此外,通过口服给药介导的这 8 个上调的 P450 转录本的 RNA 干扰,然后进行杀虫剂生物测定,验证了 3 个 P450 基因与 B. odoriphaga 中噻虫嗪解毒有关。本研究为 B. odoriphaga 中噻虫嗪解毒相关的 P450 基因提供了新的信息。

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